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Influence of additional external pressure on optical emission intensity in liquid-phase laser ablation

机译:附加外压对液相激光烧蚀光发射强度的影响

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We examined the influence of additional external pressure on the optical emission intensity from plasmas produced by laser ablation of a Ti target immersed in distilled water. We adopted two methods for applying the external pressure. When ambient water was pressurized by connecting the ablation chamber to N_2 gas at a pressure range of 0.1-0.9 MPa, we observed the increase in the optical emission intensity with the pressure. This increase was considered to be caused by the change in the amount of dissolved N_2 gas in the water. On the other hand, when an external pressure of 30 MPa was applied to ambient water by using a mechanical pump, we observed the compression of the spatial distribution of the optical emission intensity. These experimental results suggest a possibility that chemical reactions and physical states (pressure and temperature) of liquid-phase laser-ablation plasmas can be controlled by adding external pressure to ambient liquid.
机译:我们检查了额外的外部压力对通过激光烧蚀浸入蒸馏水中的钛靶材产生的等离子体产生的光发射强度的影响。我们采用了两种施加外部压力的方法。当通过在0.1-0.9 MPa的压力范围内将消融室连接到N_2气体对周围的水加压时,我们观察到光发射强度随压力而增加。该增加被认为是由水中溶解的N_2气体量的变化引起的。另一方面,当通过使用机械泵向环境水施加30 MPa的外部压力时,我们观察到了光发射强度的空间分布的压缩。这些实验结果表明,可以通过向环境液体中施加外部压力来控制液相激光烧蚀等离子体的化学反应和物理状态(压力和温度)。

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